Image reading apparatus having a function for correcting dark signals generated in a photoelectric conversion element
Abstract
An image reading apparatus includes a photoelectric conversion element which has a plurality of cells, the plurality of cells including shielded cells which are optically shielded so that each shielded cell outputs only the dark signal, a dark signal data generating system for generating dark signal data for each cell of the photoelectric conversion element, the dark signal data corresponding to a ratio of an image signal output from each cell under a no-exposure condition to a first reference dark signal which is obtained based on the dark signals output from the shielded cells under the no-exposure condition, a dark signal data memory for storing the dark signal data for each cell, a dark signal component generating system for generating a dark signal component for each cell, the dark signal component corresponding to a product of the dark signal data for each cell multiplied by a second reference dark signal which is obtained based on the dark signals output from the shielded cells under the exposure condition, and a subtracter for subtracting the dark signal component from an image signal obtained for each corresponding cell under the exposure condition.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1. An image reading apparatus comprising: a photoelectric conversion element which has a plurality of cells, each cell generating an image signal including a photoelectric conversion signal corresponding to the amount of light incident thereto and a dark signal based on a dark current generated therein, said plurality of cells including shielded cells which are optically shielded so that each shielded cell outputs only the dark signal; dark signal data generator for generating dark signal data under a no-exposure condition where there is no light incident to said photoelectric conversion element, said dark signal data corresponding to a ratio of an image signal generated from each cell under the no-exposure condition to a first reference dark signal which is obtained based on the dark signals output from the shielded cells under the no-exposure condition; dark signal data storage means for storing said dark signal data for each cell of said photoelectric conversion element; dark signal component generating means for generating a dark signal component for each cell of said photoelectric conversion element under an exposure condition where a light is incident to said photoelectric conversion element, said dark signal component corresponding to a product of said dark signal data stored for each cell in said dark signal data storage means multiplied by a second reference dark signal which is obtained based on the dark signals output from the shielded cells under the exposure condition; and dark signal removing means, coupled to said dark signal component generating means, for removing the dark signal component generated for each cell by said dark signal component generating means from an image signal output from each corresponding cell of said photoelectric conversion element under the exposure condition, wherein said image reading apparatus outputs the image signal from which the dark signal component is removed for each cell of said photoelectric conversion element.
2. An image reading apparatus as claimed in claim 1, wherein a longer period of time is required for generating the image signal for each cell under the no-exposure condition than is required for generating the image signal for each cell under the exposure condition.
3. An image reading apparatus as claimed in claim 1, wherein said dark signal component generating means comprises; first means for generating the second reference dark signal based on the dark signals from the shielded cells under the exposure condition, second means for generating the product of said dark signal data for each cell multiplied by the second reference dark signal generated by said first means, wherein said product generated by said second means corresponds to the dark signal component for each cell.
4. An image reading apparatus comprising: a photoelectric conversion element which has a plurality of cells, each cell generating an image signal including a photoelectric conversion signal corresponding to the amount of light incident thereto and a dark signal based on a dark current generated therein, said plurality of cells including shielded cells which are optically shielded so that each shielded cell outputs only the dark signal; an analog-digital converter, coupled to said photoelectric conversion element, for converting the image signal for each cell of said photoelectric conversion element based on a reference signal into digital data; dark signal data generator for generating dark signal data under a no-exposure condition where there is no light incident to said photoelectric conversion element, said dark signal data corresponding to a ratio of an image signal generated from each cell under the no-exposure condition to a first reference dark signal which is obtained based on the dark signals output from the shielded cells under the no-exposure condition; dark signal data storage means for storing the dark signal data for each cell of said photoelectric conversion element; dark signal component generating means for generating a dark signal component for each cell of said photoelectric conversion element, said dark signal component generating means comprising, a) first means for generating reference dark signal data based on the digital data output from said analog-digital converter when the dark signals for the shielded cells and a predetermined reference signal are supplied to said analog-digital converter under the exposure condition, and b) second means for generating a product of said dark signal data stored for each cell in said dark signal storage means multiplied by the reference dark signal data generated by said first means, said product being used as the dark signal component; and dark signal removing means, coupled to said dark signal component generating means, for removing the dark signal component generated for each cell by said second means from the digital data output from said analog-digital converter when the image signal for each corresponding cell is supplied to said analog-digital converter, wherein said image reading apparatus outputs image signal data from which the dark signal component is removed for each cell of said photoelectric conversion element.
5. An image reading apparatus as claimed in claim 4, wherein said first means of said dark signal component generating means has calculating means for calculating an average data of the dark signals for shielded cells of said photoelectric conversion element, said average data being used as the reference dark signal data.
6. An image reading apparatus comprising: a photoelectric conversion element which has a plurality of cells, each cell generating an image signal including a photoelectric conversion signal corresponding to the amount of light incident thereto and a dark signal based on a dark current generated therein, said plurality of cells including shielded cells which are optically shielded so that each shielded cell outputs only the dark signal; an analog-digital converter, coupled to said photoelectric conversion element, for converting the image signal for each cell of said photoelectric conversion element based on a reference signal into digital data; dark signal data generating means for generating dark signal data for each cell of said photoelectric conversion element, said dark signal data generating means comprising, a) first supply means for supplying the image signal for each cell of the photoelectric conversion element to said analog-digital converter, said image signal being obtained for each cell under a no-exposure condition where there is no light incident to said photoelectric conversion element, and b) second supply means for supplying a first reference dark signal to said analog-digital converter, said first reference dark signal being obtained based on the dark signals output from the shielded cells under the no-exposure condition so that the digital data output from said analog-digital converter corresponds to a ratio of the image signal for each cell to the first reference dark signal, said digital data being used as the dark signal data; dark signal data storage means, coupled to said analog-digital converter, for storing the dark signal data output for each cell from said analog-digital converter; dark signal component generating means for generating a dark signal component for each cell of said photoelectric conversion element, said dark signal component generating means comprising, a) first means for generating a second reference dark signal based on the dark signals for the shielded cells, b) second means for converting the dark signal data stored for each cell in said dark signal data storage means into an analog signal, and c) third means for generating a product of said analog signal obtained for each cell by said second means multiplied by the second reference dark signal generated by said first means, said product being used as the dark signal component; and dark signal removing means, coupled to said third means of said dark signal component generating means and said photoelectric conversion element, for subtracting the dark signal component generated for each cell by said third means from the image signal for each cell of said photoelectric conversion element, wherein the image signal from which the dark signal component is removed for each cell of said photoelectric conversion element is supplied to said analog digital converter.
7. An image reading apparatus comprising: a photoelectric conversion element which has a plurality of cells, each cell generating an image signal including a photoelectric conversion signal corresponding to the amount of light incident thereto and a dark signal based on a dark current generated therein, said plurality of cells including shielded cells which are optically shielded so that each shielded cell outputs only the dark signal; an analog-digital converter, coupled to said photoelectric conversion element, for converting the image signal for each cell of said photoelectric conversion element based on a reference signal into digital data; dark signal data generator for generating dark signal data under a no-exposure condition where there is no light incident to said photoelectric conversion element, said dark signal data corresponding to a ratio of an image signal generated from each cell under the no-exposure condition to a first reference dark signal which is obtained based on the dark signals output from the shielded cells under the no-exposure condition; dark signal data storage means for storing the dark signal data output from said analog-digital converter for each cell; dark signal component generating means for generating a dark signal component for each cell of said photoelectric conversion element, said dark signal component generating means comprising, a) first means for generating a second reference dark signal based on the dark signal for the shielded cells, b) second means for converting the dark signal data stored for each cell in said dark signal data storage means into an analog signal, and c) third means for generating a product of said analog signal obtained for each cell by said second means multiplied by the second reference dark signal generated by said first means, said product being used as the dark signal component; and dark signal removing means, coupled to said third means of said dark signal component generating means and said photoelectric conversion element, for subtracting the dark signal component generated for each cell by said third means from the image signal for each cell of said photoelectric conversion element, wherein the image signal from which the dark signal component is removed for each cell of said photoelectric conversion element is supplied to said analog digital converter.Join the waitlist — get patent alerts
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